use of isoluminant stimuli reveals segregation of functions across the magnocellular vs....

33
Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Upload: gervase-bruce

Post on 03-Jan-2016

218 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Use of Isoluminant StimuliReveals Segregation of Functions

across theMagnocellular vs. Parvocellular

Systems

Page 2: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Properties of M vs. P Neurons

Page 3: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Contrast Sensitivity

Page 4: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

P-SystemResolves

ManyLevels of Gray

Page 5: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

M-SystemResolves

FewLevels of Gray

Page 6: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Isoluminant Stimulus Paradigm(Simplified B&W Camera Analogy)

Page 7: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Flicker Photometry Stimuli

Page 8: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Counter-Phase Red/Green Flicker

Page 9: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Increase Flicker Rate Until Color Fusion Threshold

Color fusion threshold usually around 12-15 Hz.

Page 10: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Adjust Intensity of Green StimulusUntil Luminance Flicker Minimized

The values of the Red and Green stimuli at the point of complete flicker fusionestablishes the ISOLUMINANT POINT for the current observer.

Page 11: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

REMEMBER:

The M-system is insensitive toIsoluminant Stimuli

Page 12: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

ASSUMPTION:

Perceptual Abilities Lostunder IsoLuminant Conditionsare Mediated by the M-system

Page 13: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Depth/Size Scaling

• Size Constancy• Ponzo Illusion• Muller-Lyer Illusion• Texture Gradients

• Stereopsis• Motion Parallax

Page 14: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Size Constancy

Page 15: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Ponzo Illusion

Page 16: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Müller-Lyer Illusion

Page 17: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Green-on-Red Stimulus Format

Page 18: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Depth/Distance from Texture Gradients

Page 19: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Depth from Motion ParallaxSony Wii Demo

Page 20: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Motion Analysis

• Structure from Motion

• Synchronized Apparent Motion(Grouping by Proximate Motion)

Page 21: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Structure from Coherent Motion

http://www.michaelbach.de/ot/col_equilu/index.html

Page 22: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Grouping by Motion

Frame-1 Frame-2

Page 23: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Grouping by Motion

Page 24: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Grouping by Motion

Page 25: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Grouping by Motion

Page 26: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Figure/Ground Segregation

• Rubin’s Vase

• Subjective Contours(Kaniza figures)

Page 27: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Rubin’s Vase

Page 28: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Subjective Contours

Page 29: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Subjective Contours

Page 30: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Object Perception

• Binding Primitive Features into Objects

• Grouping by Colinearity(AI: “Block World”)

Page 31: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Grouping by Colinearity(“Block World”)

Page 32: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems

Appendix

Page 33: Use of Isoluminant Stimuli Reveals Segregation of Functions across the Magnocellular vs. Parvocellular Systems